4.7 Article

The amiodarone derivative KB130015 activates hERG1 potassium channels via a novel mechanism

Journal

EUROPEAN JOURNAL OF PHARMACOLOGY
Volume 632, Issue 1-3, Pages 52-59

Publisher

ELSEVIER
DOI: 10.1016/j.ejphar.2010.01.010

Keywords

K+ channel opener; Human ether a go-go related gene; KB130015; Amiodarone; Patch clamp

Funding

  1. Deutsche Forschungsgemeinschaft [HE 2993/8]
  2. National Institute of Health [NS21151]
  3. UH PBRC general funds

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Human ether 6 go-go related gene (hERG1) potassium channels underlie the repolarizing I-Kr current in the heart. Since they are targets of various drugs with cardiac side effects we tested whether the amiodarone derivative 2 -methyl-3-(3,5-diiodo-4-carboxymethoxybenzyl)benzofuran (KB130015) blocks hERG1 channels like its parent compound. Using patch-clamp and two-electrode voltage-clamp techniques we found that KB130015 blocks native and recombinant hERG1 channels at high voltages, but it activates them at low voltages. The activating effect has an apparent EC50 value of 12 mu M and is brought about by an about 4-fold acceleration of activation kinetics and a shift in voltage-dependent activation by -16 mV. Channel activation was not use-dependent and was independent of inactivation gating. KB130015 presumably binds to the hERG1 pore from the cytosolic side and functionally competes with hERG1 block by amiodarone, E4031 (N-[4-[[1-[2-(6-methyl-2-pyridinyl)ethyl]-4-piperidinyl] carbonyl] phenyl] methanesulfonamide dihydrochloride), and sertindole. Vice versa, amiodarone attenuates hERG1 activation by KB130015. Based on synergic channel activation by mallotoxin and KB130015 we conclude that the hERG1 pore contains at least two sites for activators that are functionally coupled among each other and to the cavity-blocker site. KB130015 and antiodarone may serve as lead structures for the identification of hERG1 pore-interacting drugs favoring channel activation vs. block. (C) 2010 Elsevier B.V. All rights reserved.

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